том 139 издание 22 страницы 7624-7631

Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol).

Тип публикацииJournal Article
Дата публикации2017-05-24
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SJR5.554
CiteScore22.5
Impact factor15.6
ISSN00027863, 15205126
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Краткое описание
This paper describes charge transport by tunneling across self-assembled monolayers (SAMs) of thiol-terminated derivatives of oligo(ethylene glycol) (HS(CH2CH2O)nCH3; HS(EG)nCH3); these SAMs are positioned between gold bottom electrodes and Ga2O3/EGaIn top electrodes. Comparison of the attenuation factor (β of the simplified Simmons equation) across these SAMs with the corresponding value obtained with length-matched SAMs of oligophenyls (HS(Ph)nH) and n-alkanethiols (HS(CH2)nH) demonstrates that SAMs of oligo(ethylene glycol) have values of β (β(EG)n = 0.29 ± 0.02 natom-1 and β = 0.24 ± 0.01 Å-1) indistinguishable from values for SAMs of oligophenyls (β(Ph)n = 0.28 ± 0.03 Å-1), and significantly lower than those of SAMs of n-alkanethiolates (β(CH2)n = 0.94 ± 0.02 natom-1 and 0.77 ± 0.03 Å-1). There are two possible origins for this low value of β. The more probable involves hole tunneling by superexchange, which rationalizes the weak dependence of the rate of charge transport on the length of the molecules of HS(EG)nCH3 using interactions among the high-energy, occupied orbitals associated with the lone-pair electrons on oxygen. Based on this mechanism, SAMs of oligo(ethylene glycol)s are good conductors (by hole tunneling) but good insulators (by electron and/or hole drift conduction). This observation suggests SAMs derived from these or electronically similar molecules are a new class of electronic materials. A second but less probable mechanism for this unexpectedly low value of β for SAMs of S(EG)nCH3 rests on the possibility of disorder in the SAM and a systematic discrepancy between different estimates of the thickness of these SAMs.
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Baghbanzadeh M. et al. Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol). // Journal of the American Chemical Society. 2017. Vol. 139. No. 22. pp. 7624-7631.
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Baghbanzadeh M., Bowers C. M., Rappoport D., Żaba T., Yuan L., Kang K., Liao K. C., Gonidec M., Rothemund P., Cyganik P., Aspuru-Guzik A., Whitesides G. M. Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol). // Journal of the American Chemical Society. 2017. Vol. 139. No. 22. pp. 7624-7631.
RIS |
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TY - JOUR
DO - 10.1021/jacs.7b02770
UR - https://doi.org/10.1021/jacs.7b02770
TI - Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol).
T2 - Journal of the American Chemical Society
AU - Baghbanzadeh, Mostafa
AU - Bowers, Carleen M
AU - Rappoport, Dmitrij
AU - Żaba, Tomasz
AU - Yuan, Li
AU - Kang, Kyungtae
AU - Liao, K C
AU - Gonidec, M.
AU - Rothemund, Philipp
AU - Cyganik, P.
AU - Aspuru-Guzik, Alan
AU - Whitesides, George M.
PY - 2017
DA - 2017/05/24
PB - American Chemical Society (ACS)
SP - 7624-7631
IS - 22
VL - 139
PMID - 28492077
SN - 0002-7863
SN - 1520-5126
ER -
BibTex |
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@article{2017_Baghbanzadeh,
author = {Mostafa Baghbanzadeh and Carleen M Bowers and Dmitrij Rappoport and Tomasz Żaba and Li Yuan and Kyungtae Kang and K C Liao and M. Gonidec and Philipp Rothemund and P. Cyganik and Alan Aspuru-Guzik and George M. Whitesides},
title = {Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol).},
journal = {Journal of the American Chemical Society},
year = {2017},
volume = {139},
publisher = {American Chemical Society (ACS)},
month = {may},
url = {https://doi.org/10.1021/jacs.7b02770},
number = {22},
pages = {7624--7631},
doi = {10.1021/jacs.7b02770}
}
MLA
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Baghbanzadeh, Mostafa, et al. “Anomalously Rapid Tunneling: Charge Transport across Self-Assembled Monolayers of Oligo(ethylene glycol)..” Journal of the American Chemical Society, vol. 139, no. 22, May. 2017, pp. 7624-7631. https://doi.org/10.1021/jacs.7b02770.
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